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Ovarian Neoplasms clinical trials

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NCT ID: NCT02552121 Completed - Bladder Cancer Clinical Trials

Tisotumab Vedotin (HuMax®-TF-ADC) Safety Study in Patients With Solid Tumors

Start date: November 30, 2015
Phase: Phase 1/Phase 2
Study type: Interventional

The purpose of the trial is to establish the tolerability of tisotumab vedotin (HuMax-TF-ADC) dosed three times every four weeks (3q4wk) in a mixed population of patients with specified solid tumors.

NCT ID: NCT02545010 Recruiting - Ovarian Cancer Clinical Trials

Phase I Low Dose WART in Combination With Weekly Paclitaxel for Platinum Resistant Ovarian Cancer

Start date: September 2015
Phase: Phase 1
Study type: Interventional

Background: Epithelial Ovarian Cancer is the most lethal amongst the gynecologic malignancies and is the fifth leading cause of cancer death in women in the United States.1 Despite initial high response rates, 50% to 75% of women who present with advanced disease suffer relapse and require re treatment2.The optimal treatment for platinum resistant ovarian cancer remains hotly debated. Combination chemotherapy is not favored due to its increased toxicity and lack of convincing benefit when compared to single agent chemotherapy.3,4 Recently, the addition of bevacizumab to single agent chemotherapy in the AURELIA study improved progression free survival (PFS) from 3.4 months to 6.7 months. Response rates were also improved from 11.8% versus 27.3% (p= 0 .001).9 Aim: To determine the maximal tolerated dose (MTD) of weekly paclitaxel in combination with LDWART. The recommended phase II dose (RP2D) will be based on the MTD in this Phase I study. Method: This study is designed as a prospective, single arm phase I study with 3+3 with dose de-escalation and cohort expansion. All patients will receive weekly paclitaxel at a pre specified dose of 80 mg/m2, 70 mg/m2, 60mg/m2 or 50 mg/m2 via intravenous infusion according to institution specific standard practices. Cycles of chemotherapy will be administered weekly without interruption on Days 1,8,15,22,29,36 for a total of 6 weekly cycles in combination with LDWART(Fig.1). LDWART will be given at 60 cGy fractions, twice daily for two days, with a minimum of 4 hours inter fraction interval, starting on day 1 of each cycle of weekly paclitaxel for 6 weeks.(Fig.1). Importance of proposed research: The combination of a LDWART with weekly paclitaxel may improve the efficacy of the current standard weekly paclitaxel in platinum resistant ovarian cancer patients. Potential benefits and risks: The combination may improve treatment response. Adding LDWART may increase treatment risks, but these will be monitored closely.

NCT ID: NCT02541370 Completed - Breast Cancer Clinical Trials

Treatment of Relapsed and/or Chemotherapy Refractory Advanced Malignancies by CART133

Start date: June 2015
Phase: Phase 1/Phase 2
Study type: Interventional

RATIONALE: Placing a tumor antigen chimeric receptor that has been created in the laboratory into patient autologous or donor-derived T cells may make the body build immune response to kill cancer cells. PURPOSE: This clinical trial is studying genetically engineered lymphocyte therapy in treating patients with Relapsed and/or Chemotherapy Refractory Advanced Malignancies.

NCT ID: NCT02540551 Terminated - Ovarian Neoplasms Clinical Trials

Sentinel Node Detection in Ovarian Cancer

SONAR-2
Start date: January 1, 2016
Phase: Phase 1
Study type: Interventional

Recently the investigators have shown that the SN procedure performed through the injection of tracers into the ovarian ligaments is feasible and promising in patients with clinical early stage ovarian cancer (OC). Injection of radioactive tracers resulted in the identification of SNs in all 21 patients. Before a multicentre prospective trial can be initiated, still some questions have to be answered, especially if a SN procedure still is feasable in patients with OC through injection of the tracers in the ovarian ligaments, when the ovarian tumour has already been resected, either during the same surgical procedure (ovarian tumour resected for frozen section with a malignancy as result) or at a second surgical procedure to complete the staging procedure (by laparotomy or laparoscopy).

NCT ID: NCT02540356 Terminated - Clinical trials for Refractory Ovarian Cancer With Recurrent Symptomatic Malignant Ascites

Phase 1/2a Two-Arm Dose-Escalation Study of BAX69 in Subjects With Malignant Ascites of Ovarian Cancer

Start date: November 2, 2015
Phase: Phase 1/Phase 2
Study type: Interventional

The purpose of this study is to evaluate the safety and tolerability of BAX69 monotherapy given either as intraperitoneal (IP) infusion (Single-Route Arm); or as IP infusion after intravenous (IV) infusion (IV+IP) (Double-Route Arm), and to determine the maximum tolerated dose (MTD) and recommended Phase 2 dose (RP2D) for each Arm separately, in subjects with refractory ovarian cancer and recurrent malignant ascites. In both Arms, the plasma pharmacokinetics (PK) of BAX69 will be characterized, and pharmacodynamics (PD) markers will be explored in plasma and ascites. Two expansion cohorts will further assess the tolerability of the RP2D and explore clinical signs of efficacy.

NCT ID: NCT02539719 Terminated - Ovarian Cancer Clinical Trials

Study of SC-003 Alone and in Combination With ABBV-181 in Subjects With Platinum-Resistant/Refractory Ovarian Cancer

Start date: August 2015
Phase: Phase 1
Study type: Interventional

This is a Phase 1a/1b study of SC-003 as a single agent and in combination with ABBV-181 in patients with platinum-resistant/refractory ovarian cancer. SC-003 is an antibody-drug conjugate (ADC) comprised of a monoclonal antibody linked to a potent chemotherapy. ABBV-181 is a humanized, recombinant, mAb that binds to cell surface expressed programmed cell death 1 (PD-1).

NCT ID: NCT02537444 Completed - Ovarian Cancer Clinical Trials

Acalabrutinib (ACP-196) Alone and in Combination With Pembrolizumab in Ovarian Cancer (KEYNOTE191)

Start date: November 2015
Phase: Phase 2
Study type: Interventional

To characterize the safety and efficacy of acalabrutinib (ACP-196) monotherapy and acalabrutinib plus pembrolizumab combination therapy in subjects with recurrent ovarian cancer

NCT ID: NCT02534922 Recruiting - Ovarian Cancer Clinical Trials

Study of Prolanta™ in Recurrent or Persistent Epithelial Ovarian Cancer

ProlantaOC
Start date: February 2016
Phase: Phase 1
Study type: Interventional

This trial is a Phase I open-label safety study of Prolanta™, a recombinant analog of the human prolactin protein with a single amino acid substitution to create an antagonist of the prolactin receptor. The Sponsor believes that blocking the prolactin receptor in patients with ovarian and other cancers will be effective as a monotherapy or in combination with other chemotherapies. This Phase I study will be conducted in Subjects with recurrent or persistent epithelial ovarian cancer, primary peritoneal cancer, or fallopian tube cancer.

NCT ID: NCT02531997 Completed - Breast Cancer Clinical Trials

A Mind-body Intervention to Improve Body and/or Self Image

Start date: August 2015
Phase: N/A
Study type: Interventional

The purpose of this study is to determine if hypnotic relaxation therapy is a more effective intervention for improving self-image in women who have been diagnosed with breast or gynecologic cancer when compared to progressive muscle relaxation therapy.

NCT ID: NCT02530606 Withdrawn - Ovarian Carcinoma Clinical Trials

Photoacoustic Imaging in Detecting Ovarian or Fallopian Tube Cancer

Start date: September 2016
Phase: N/A
Study type: Interventional

This pilot clinical trial studies how well photoacoustic imaging works in detecting ovarian or fallopian tube cancer. Photoacoustic imaging is an imaging method that uses lasers to light up tissue, and then converts the light information into ultrasound images. Photoacoustic imaging can provide images of the structure of tissues, as well as their function and the levels of molecules, such as the flow of blood in blood vessels and the level of oxygen in the blood. Photoacoustic imaging may help doctors determine whether a mass is benign (non-cancerous) or cancerous based on the molecular differences between cancer and normal tissue. It may be more accurate and less expensive than other imaging methods, and does not expose patients to radiation.